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310824 Sigma-Aldrich

D-Glucose-2-d

98 atom % D, 99% (CP)

Synonym: Deuterated Glucose, Dextrose-2-d, Labeled Glucose

Note: This product can be packaged on demand. For information on pricing, availability and packaging of custom sizes, please contact Stable Isotopes Customer Service.
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Properties

Related Categories Alphabetical Listings, Carbohydrates, G-H, Labeled Carbohydrates, Metabolic and Nutrition Research,
Quality Level   200
isotopic purity   98 atom % D
assay   99% (CP)
form   powder
optical activity   [α]25/D +52.0°, c = 2 in H2O (trace NH4OH)
mp   150-152 °C (lit.)
mass shift   M+1
SMILES string   [2H][C@](O)(C=O)[C@@H](O)[C@H](O)[C@H](O)CO
InChI   1S/C6H12O6/c7-1-3(9)5(11)6(12)4(10)2-8/h1,3-6,8-12H,2H2/t3-,4+,5+,6+/m0/s1/i3D
InChI key   GZCGUPFRVQAUEE-FPCZXLAFSA-N

Description

Packaging

This product may be available from bulk stock and can be packaged on demand. For information on pricing, availability and packaging, please contact Stable Isotopes Customer Service.

Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport
WGK Germany 
3

Documents

Certificate of Analysis (COA)

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Protocols & Articles

Articles

An Approach to Quantifying the Conversion of Carbohydrate to Fat in Humans

The recent completion of the Human Genome Project and the progress in proteomics have contributed to our current understanding of signal transduction pathways that control and modulate metabolism and...
Jean-Marc Schwarz Ph.D. and Nathalie Bergeron, RD, Ph.D.
ISOTEC® Stable Isotopes 2008 - 2010 Catalog
Keywords: Chromatography, Clinical, Diagnostic, Environmental, Gas chromatography, Genetic, Mass spectrometry, Metabolism, Metabolomics, Pharmaceutical, Proteomics, Transduction

Glycolysis via the Embden-Meyerhof-Parnas glycolytic pathway

Glycolysis is the almost universal pathway that converts glucose into pyruvate along with the formation of nicotinamide adenine dinucleotide (NADH) and adenosine triphosphate (ATP). It primarily occu...
Keywords: Aerobic, Aldol reaction, Anaerobic, Dehydration reaction, Fermentation, Glycolysis, Isomerizations, Metabolism, Metabolites, Metabolomics, Oxidations, Phosphorylations, Photosynthesis

Monosaccharide Biosynthesis

Each monosaccharide has its own interesting metabolism. The pathway by which a monosaccharide is made, is not the reverse of its degradation pathway (see Figure 4).
BioFiles 2007, 2.6, 21.
Keywords: Addition reactions, Carboxylations, Catalysis, Condensations, Decarboxylations, Degradations, Metabolic Pathways, Metabolism, Metabolites, Phosphorylations, Reductions

Peer-Reviewed Papers
15

References

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